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Bibliografia publikacji pracowników
Państwowej Szkoły Wyższej w Białej Podlaskiej

Baza tworzona przez Bibliotekę Akademii Bialskiej im. Jana Pawła II.



Zapytanie: SIDDIQUE RAFAT
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Nr opisu: ALISTA FILADELFIJSKAIMPACT FACTOR35.000PUNKTACJA UWM^a009996.028^b009964.000^c009999.000^d009964.000201820182018Application of Recycled Ceramic Aggregates for the Production of Mineral-Asphalt Mixtures00000358420000001528AOartykuł oryginalny naukowyPUBLIKACJAPEŁNA PUBLIKACJAAAartykuł w czasopiśmie z IF (wykaz MNiSW)AFILIACJA PODANAENGhttp://www.mdpi.com/1996-1944/11/5/658PRACA RECENZOWANA100^a1996-1944^bA^gABC^iX^jXY^a003^b003^c2018-09-11, 09:18^d2019-06-24, 11:14^e3621939321^f3524809125^aApplication of Recycled Ceramic Aggregates for the Production of Mineral-Asphalt Mixtures^aMaterials^a2018^bVol. 11^cissue 5^darticle number 658^a1996-1944^a2017/2018^a10.3390/ma11050658^aAndrzejuk, Wojciech^cy^amineral-asphalt mixtures^bdziałalność statutowa WNET PSW^c2017-WNET/KNT/ZB/1^aFINAL_PUBLISHED^bCC-BY^cAT_PUBLICATION^eOPEN_JOURNAL^aThis paper describes a method of designing and producing innovative mineral-asphalt mixtures, which utilize waste aggregate from the recycling of sanitary ceramics. The work presents the basic properties of the ceramic material, the investigation concerning the microstructure of the aggregate obtained from the grinding of waste, and a comparison with the images obtained for the aggregates usually employed in mineral-asphalt mixtures. The mixtures were designed for the application in the wearing course. Four series of mixtures were prepared. In the first and second, the ceramic aggregate constituted a partial substitute for dolomite, whereas in the third, we substituted granodiorite, and the fourth series contained only dolomite. The mixtures were examined for the content of soluble binder, the bulk density of samples, the presence of voids, the space filled with binder, and the susceptibility to water and frost corrosion. The obtained results were compared with the standard requirements. The microstructure as well as the contact zone in the considered mineral-asphalt mixtures are presented based on research conducted by means of a scanning electron microscope (SEM).^aaggregate from sanitary ceramic wastes^aenvironmentally friendly construction materials
Autorzy: , 009964.000 A 003 Vol. 11 działalność statutowa WNET PSW CC-BY 009996.0281996-1944003Application of Recycled Ceramic Aggregates for the Production of Mineral-Asphalt MixturesMaterials20181996-19442017/201810.3390/ma11050658Andrzejuk, Wojciechmineral-asphalt mixturesFINAL_PUBLISHEDThis paper describes a method of designing and producing innovative mineral-asphalt mixtures, which utilize waste aggregate from the recycling of sanitary ceramics. The work presents the basic properties of the ceramic material, the investigation concerning the microstructure of the aggregate obtained from the grinding of waste, and a comparison with the images obtained for the aggregates usually employed in mineral-asphalt mixtures. The mixtures were designed for the application in the wearing course. Four series of mixtures were prepared. In the first and second, the ceramic aggregate constituted a partial substitute for dolomite, whereas in the third, we substituted granodiorite, and the fourth series contained only dolomite. The mixtures were examined for the content of soluble binder, the bulk density of samples, the presence of voids, the space filled with binder, and the susceptibility to water and frost corrosion. The obtained results were compared with the standard requirements. The microstructure as well as the contact zone in the considered mineral-asphalt mixtures are presented based on research conducted by means of a scanning electron microscope (SEM).aggregate from sanitary ceramic wastesenvironmentally friendly construction materials, 009964.000 A 003 Vol. 11 działalność statutowa WNET PSW CC-BY 009996.0281996-1944003Application of Recycled Ceramic Aggregates for the Production of Mineral-Asphalt MixturesMaterials20181996-19442017/201810.3390/ma11050658Andrzejuk, Wojciechmineral-asphalt mixturesFINAL_PUBLISHEDThis paper describes a method of designing and producing innovative mineral-asphalt mixtures, which utilize waste aggregate from the recycling of sanitary ceramics. The work presents the basic properties of the ceramic material, the investigation concerning the microstructure of the aggregate obtained from the grinding of waste, and a comparison with the images obtained for the aggregates usually employed in mineral-asphalt mixtures. The mixtures were designed for the application in the wearing course. Four series of mixtures were prepared. In the first and second, the ceramic aggregate constituted a partial substitute for dolomite, whereas in the third, we substituted granodiorite, and the fourth series contained only dolomite. The mixtures were examined for the content of soluble binder, the bulk density of samples, the presence of voids, the space filled with binder, and the susceptibility to water and frost corrosion. The obtained results were compared with the standard requirements. The microstructure as well as the contact zone in the considered mineral-asphalt mixtures are presented based on research conducted by means of a scanning electron microscope (SEM).aggregate from sanitary ceramic wastesenvironmentally friendly construction materials.
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Charakterystyka formalna: s, which utilize waste aggregate from the recycling of sanitary ceramics. The work presents the basic properties of the ceramic material, the investigation concerning the microstructure of the aggregate obtained from the grinding of waste, and a comparison with the images obtained for the aggregates usually employed in mineral-asphalt mixtures. The mixtures were designed for the application in the wearing course. Four series of mixtures were prepared. In the first and second, the ceramic aggregate constituted a partial substitute for dolomite, whereas in the third, we substituted granodiorite, and the fourth series contained only dolomite. The mixtures were examined for the content of soluble binder, the bulk density of samples, the presence of voids, the space filled with binder, and the susceptibility to water and frost corrosion. The obtained results were compared with the standard requirements. The microstructure as well as the contact zone in the considered mineral-asphalt mixtures are presented based on research conducted by means of a scanning electron microscope (SEM).^aaggregate from sanitary ceramic wastes^aenvironmentally friendly construction materials
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